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首页> 外文期刊>Journal of pharmacological sciences. >Utilization of Human Liver Microsomes to Explain Individual Differences in Paclitaxel Metabolism by CYP2C8 and CYP3A4
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Utilization of Human Liver Microsomes to Explain Individual Differences in Paclitaxel Metabolism by CYP2C8 and CYP3A4

机译:利用人类肝脏微粒体解释CYP2C8和CYP3A4在紫杉醇代谢中的个体差异

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References(15) Cited-By(30) Paclitaxel is widely used for treatment of malignant tumors. Paclitaxel is metabolized by CYP2C8 and CYP3A4, and these enzymes are known to differ between individuals, although the details have not been clarified. Recent progress in pharmacogenetics has shown that genetic polymorphisms of metabolic enzymes are related to these individual differences. We investigated the effect of the polymorphisms on paclitaxel metabolism by analyzing metabolic activities of CYP2C8 and CYP3A4 and expressions of mRNA and protein. Production of 6α-hydroxypaclitaxel, a metabolite of CYP2C8, was 2.3-fold larger than 3'-p-hydroxypaclitaxel, a metabolite of CYP3A4. Significant inter-individual differences between these two enzyme activities were shown. The expressions of mRNA and protein levels correlated well with the enzyme activities, especially with CYP3A4. Although it was previously reported that CYP2C8*3 showed lower activity than the wild type, two subjects that had the CYP2C8*3 allele did not show lower activities in our study. Inter-individual differences in paclitaxel metabolism may be related to CYP2C8 and CYP3A4 mRNA expression. CYP2C8 is the primary metabolic pathway of paclitaxel, but there is a “shifting phenomenon” in the metabolic pathway of paclitaxel in the liver of some human subjects.
机译:参考文献(15)被引用的By(30)紫杉醇被广泛用于治疗恶性肿瘤。紫杉醇被CYP2C8和CYP3A4代谢,并且这些酶在个体之间是不同的,尽管细节尚未弄清。药物遗传学的最新进展表明,代谢酶的遗传多态性与这些个体差异有关。我们通过分析CYP2C8和CYP3A4的代谢活性以及mRNA和蛋白的表达,研究了多态性对紫杉醇代谢的影响。 CYP2C8的代谢产物6α-羟基紫杉醇的产量是CYP3A4的代谢产物3'-p-羟基紫杉醇的2.3倍。显示了这两种酶活性之间的显着个体差异。 mRNA和蛋白质水平的表达与酶活性特别是与CYP3A4密切相关。尽管先前有报道称CYP2C8 * 3的活性低于野生型,但在我们的研究中,两名具有CYP2C8 * 3等位基因的受试者的活性没有降低。紫杉醇代谢的个体差异可能与CYP2C8和CYP3A4 mRNA表达有关。 CYP2C8是紫杉醇的主要代谢途径,但在某些人的肝脏中,紫杉醇的代谢途径存在“转移现象”。

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